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Nokia SRAN-Radio-Network-Performance-Optimization Exam Syllabus Topics:

SectionObjectives
Radio Network Performance Fundamentals- Key performance indicators (KPIs)
  • 1. Accessibility, retainability, and mobility KPIs
    • 2. Throughput and latency KPIs
      RF Optimization Principles- Coverage and capacity optimization
      • 1. Coverage analysis and enhancement
        • 2. Interference analysis and mitigation
          Troubleshooting and Performance Analysis- Network issue identification and resolution
          • 1. Performance degradation root cause analysis
            • 2. Fault analysis workflows
              LTE/NR Performance Optimization- Optimization techniques
              • 1. Scheduling and resource allocation optimization
                • 2. Handover optimization
                  SRAN Architecture Overview- SRAN network structure and components
                  • 1. Radio access network elements overview
                    • 2. LTE/NR integration principles

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                      Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q17-Q22):

                      NEW QUESTION # 17
                      Consider that the UE is performing handover from LTE to NR with the help of features CB007742 / CB008731 . Referring to the picture below, at what stage can the handover be triggered from LTE to NR?

                      Answer: B

                      Explanation:
                      The correct answer is C: From Stage 3 .
                      In LTE-to-NR mobility, the handover or redirection decision is normally based on a combination of:
                      LTE serving-cell signal level becoming weak enough, and
                      NR neighbor-cell signal level becoming strong enough.
                      From the diagram:
                      In Stage 1 , LTE is still good and NR is still weak, so LTE-to-NR HO should not be triggered.
                      In Stage 2 , the NR neighbor signal is improving, but the required combined LTE/NR mobility condition is not yet fully satisfied.
                      In Stage 3 , the NR neighbor signal has crossed the required NR threshold, while the LTE serving-cell signal has degraded enough to justify moving the UE from LTE to NR. This is the first valid stage where LTE-to- NR HO can be triggered.
                      In Stage 4 , NR is already clearly strong, but the handover could already have been triggered earlier in Stage 3.


                      NEW QUESTION # 18
                      In the case of 5G SA, which of the following triggers the Radio Link Failure, or RLF, handling mechanism?

                      Answer: D

                      Explanation:
                      The correct answer is C.
                      In 5G SA, Radio Link Failure handling is mainly UE-driven. The UE monitors the radio link quality using lower-layer indications such as in-sync and out-of-sync indications. If the UE receives enough out-of-sync indications, it starts the relevant RLF timer, commonly associated with T310 behavior. If the link does not recover before the timer expires, the UE declares Radio Link Failure and starts recovery, such as RRC re- establishment.
                      The gNodeB can detect uplink problems and may release or reconfigure the UE, but the classical RLF handling mechanism is triggered at the UE side.
                      So the correct answer is:
                      UE indication timer only.


                      NEW QUESTION # 19
                      Which statement is not true about MantaRay SON ?

                      Answer: A

                      Explanation:
                      The correct answer is B .
                      The statement "Energy savings management is not covered" is not true . Nokia describes MantaRay SON as supporting radio network performance, quality, and energy efficiency optimization. Nokia also references AI-powered energy savings management and RAN energy efficiency use cases under its SON/MantaRay automation portfolio.
                      The other statements are aligned with Nokia SON/MantaRay positioning. Nokia describes MantaRay SON as an automation layer within the MantaRay SMO framework, with support for multi-supplier/non-real-time RIC functionality and an application ecosystem. Nokia also has historical EdenNet SON material, including EdenNet SON Energy Saving Management.
                      Therefore, the statement that is not true is:
                      Energy savings management is not covered.


                      NEW QUESTION # 20
                      Which of the following statements about CBRA , or contention-based random access , is correct?

                      Answer: B

                      Explanation:
                      The correct answer is B .
                      In contention-based random access , the UE chooses a random access preamble by itself from a configured pool of available contention-based preambles. This is typically used when the UE does not yet have a dedicated connection or when the network has not assigned a dedicated preamble.
                      Because multiple UEs may choose the same preamble at the same time, preamble collision is possible . That is why CBRA requires a contention resolution step.
                      Option C describes contention-free random access , not CBRA. In contention-free random access, the network assigns a dedicated preamble to the UE, so collision risk is avoided and contention resolution is not required.
                      Option A is not the correct CBRA principle being tested. RACH false detection can be a receiver/design issue, but it does not define the CBRA procedure.
                      Option D describes a possible NSA signaling behavior around access failure handling, but it is not the core correct definition of CBRA.
                      Therefore, the correct CBRA statement is:
                      The UE autonomously selects a preamble from the configured range and starts the random access procedure.


                      NEW QUESTION # 21
                      Which of the following statements does not apply to mmWave radio propagation ?

                      Answer: A

                      Explanation:
                      The correct answer is C .
                      At mmWave / FR2 frequencies , radio propagation is more challenging than in low-band or mid-band spectrum. Diffraction becomes weaker, blockage is more severe, foliage attenuation is high, and building penetration loss is significant. This is why mmWave networks usually require dense site grids, line-of-sight or near-line-of-sight paths, and strong beamforming. Industry mmWave references consistently describe high path loss, high penetration loss, and the need for directional antenna systems to compensate for these losses.
                      Option C does not apply because water absorption and atmospheric absorption generally become more relevant at higher frequencies, not lower. Rain, humidity, and oxygen/water-vapor absorption are important considerations for mmWave link budgets.
                      So the statement that does not apply to mmWave propagation is:
                      Low water absorption at high frequencies.


                      NEW QUESTION # 22
                      ......

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